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Optimizing condenser fan control for air-cooled centrifugal chillers

机译:优化风冷离心式制冷机的冷凝器风扇控制

摘要

The current design and operation of air-cooled condensers can cause a significant decrease in chiller performance under part load conditions. This paper demonstrates optimal condenser fan control to improve the coefficient of performance (COP) of air-cooled chillers. This control involves identifying the optimum set point of condensing temperature with the optimized power relationships of the compressors and condenser fans and enhancing the airflow and heat transfer area of the condensers. An example application of this control for an air-cooled centrifugal chiller indicated that the COP could increase by 11.4-237.2%, depending on the operating conditions. Such the increase of the COP results in a reduction of up to 14.1 kWh/m2, or 27.3% in the annual electricity consumption per unit A/C floor area of chillers, given that the chillers serve an office building requiring an annual cooling energy per unit A/C floor area of 173.3 kWh/m2. The simulation results of this study will give HVAC engineers a better understanding of how to optimize the design and operation of air-cooled chillers.
机译:风冷冷凝器的当前设计和运行会导致部分负载条件下的冷却器性能显着下降。本文演示了最佳的冷凝器风扇控制,以提高风冷式制冷机的性能系数(COP)。该控制涉及利用压缩机和冷凝器风扇的最佳功率关系来确定最佳的冷凝温度设定点,并增加冷凝器的气流和传热面积。此控件在风冷离心式制冷机上的示例应用表明,根据运行条件,COP可以提高11.4-237.2%。 COP的这种增加导致冷水机组的空调每单位A / C地板面积年能耗减少多达14.1 kWh / m2,即27.3%,因为冷水机组为办公楼提供了每年每平方米的冷却能源。单位空调面积为173.3 kWh / m2。这项研究的模拟结果将使HVAC工程师更好地了解如何优化风冷式制冷机的设计和运行。

著录项

  • 作者

    Yu FW; Chan KT;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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